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Photonic Crystal Palette of Binary Block Copolymer Blends for Full Visible Structural Color Encryption

Authors
Eoh, HongkyuJung, YoungdooPark, ChanhoLee, Chang EunPark, Tae HyunKang, Han SolJeon, SeungbaeRyu, Du YeolHuh, JunePark, Cheolmin
Issue Date
1월-2022
Publisher
WILEY-V C H VERLAG GMBH
Keywords
block copolymer blends; block copolymer photonic crystals; pattern encryption; photonic crystal ink palette; visible structural color display and painting
Citation
ADVANCED FUNCTIONAL MATERIALS, v.32, no.1
Indexed
SCIE
SCOPUS
Journal Title
ADVANCED FUNCTIONAL MATERIALS
Volume
32
Number
1
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/135317
DOI
10.1002/adfm.202103697
ISSN
1616-301X
Abstract
Structural color (SC) arising from a periodically ordered self-assembled block copolymer (BCP) photonic crystal (PC) is useful for reflective-mode sensing displays owing to its capability of stimuli-responsive structure alteration. However, a set of PC inks, each providing a precisely addressable SC in the full visible range, has rarely been demonstrated. Here, a strategy for developing BCP PC inks with tunable structures is presented. This involves solution-blending of two lamellar-forming BCPs with different molecular weights. By controlling the mixing ratio of the two BCPs, a thin 1D BCP PC film is developed with alternating in-plane lamellae whose periodicity varies linearly from approximate to 46 to approximate to 91 nm. Subsequent preferential swelling of one-type lamellae with either solvent or non-volatile ionic liquid causes the photonic band gap of the films to red-shift, giving rise to full-visible-range SC correlated with the pristine nanostructures of the blended films in both liquid and solid states. The BCP PC palette of solution-blended binary solutions is conveniently employed in various coating processes, allowing facile development of BCP SC on the targeted surface. Furthermore, full-color SC paintings are realized with their transparent PC inks, facilitating low-power pattern encryption.
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